Abstract:
A metal oxide thin film transistor includes a metal oxide semiconductor channel with the metal oxide semiconductor having a conduction band with a first energy level. The transistor further includes a layer of passivation material covering at least a portion of the metal oxide semiconductor channel. The passivation material has a conduction band with a second energy level equal to, or less than 0.5 eV above the first energy level.
Abstract:
The present invention provides a backlight module, which includes a backplane, a backlight source arranged inside the backplane, a light guide plate arranged inside the backplane, and an optic film assembly positioned on the light guide plate. The optic film assembly is connected to the backplane through snap fitting. The backlight module of the present invention includes a backplane that has side boards forming snap slots and an optic film assembly that forms fitting sections so that positioning and fixing of the optic film assembly and the backplane through snap fitting can be easily realized by means of a simple snap fitting arrangement. The drawback of the conventional way of using rivet that is adverse to bezel slimming can be eliminated and the problems of the conventional way that positioning through rivet may lead to easy detachment of the optic film assembly and deterioration of optic grade are also eliminated.
Abstract:
A full-color AM OLED includes a transparent substrate, a color filter positioned on an upper surface of the substrate, and a metal oxide thin film transistor backpanel positioned in overlying relationship on the color filter and defining an array of pixels. An array of OLEDs is formed on the backpanel and positioned to emit light downwardly through the backpanel, the color filter, and the substrate in a full-color display. Light emitted by each OLED includes a first emission band with wavelengths extending across the range of two of the primary colors and a second emission band with wavelengths extending across the range of the remaining primary color. The color filter includes for each pixel, two zones separating the first emission band into two separate primary colors and a third zone passing the second emission band.
Abstract:
The present invention provides a backlight module, which includes a backboard, a light bar mounted on the backboard, and a thermo-sensitive heat conduction material interposed between the backboard and the light bar. The thermo-sensitive heat conduction material functions to automatically adjust thermal conductivity coefficient with variation of temperature so that different portions of the light bar have different thermal conductivity coefficients in order to control the temperature of the whole light bar in a predetermined range to ensure desired performance of thermal conduction and further ensuring temperature uniformity of the whole backlight module and preventing the occurrence of luminance lowering of the whole backlight module due to excessive local high temperature.
Abstract:
The present invention provides a backlight module, which includes a backplane, a light source arranged inside the backplane, a reflector plate arranged inside the backplane, a light guide plate arranged on the reflector plate, and a mold frame mounted to the backplane, the backplane and the mold frame being coated with a layer of high reflectivity material at portions corresponding to the light source. The backlight module of the present invention uses a high reflectivity material layer coated on a backplane and a mold frame at the site of a light source that improve utilization rate of light and has a simple structure. Further, the amount of the high reflectivity material used is relatively small so as to effectively control the cost. The backplane and the mold frame are coupled to each other through snap fitting so that assembling/disassembling is easy and a large amount of time can be saved.
Abstract:
The present invention provides a slim bezel liquid crystal display device, which includes a rear enclosure, a front enclosure mating the rear enclosure, and a liquid crystal display module arranged in the rear enclosure. The liquid crystal display module is fixed inside the rear enclosure by means of hook-and-loop fasteners. The hook-and-loop fasteners each include a first fastening section and a second fastening section. The first fastening section includes hooks and the second fastening section includes hoops, whereby the hooks of the first fastening section are entangleable with the loops of the second fastening section to have the first and second fastening sections coupled to each other thereby fixing the liquid crystal display module in the rear enclosure. The slim bezel liquid crystal display device uses hook-and-loop fasteners to fix the liquid crystal display module in the rear enclosure. The structure is simple and the assembling operation is easy.
Abstract:
The present invention discloses a projecting apparatus. The apparatus includes light emitting diodes, a light guide plate and a projecting component. The light guide plate is mounted between the light emitting diodes and the projecting component. A switching control valve is mounted between the light guide plate and the projecting component. The switching control valve is switched between an on position and an off position between the light guide plate and the projecting component. In the on position, the switching control valve guides lights of the light guide plate to the projecting component as a light source of the projecting component; in the off position, the switching control valve cuts off the lights guided from the light guide plate to the projecting component to further cut off the light source of the light guide plate. The present invention further discloses a projecting equipment.
Abstract:
The present invention provides a display device, which comprises a front frame, a back plate, a back frame and a fixing member. The back frame comprises a loading surface used for loading the back plate and a plurality of side edges disposed around the loading surface, and the side edges of the back frame is fixed and connected to the front frame. The back plate is disposed on the loading surface of the back frame. The back plate comprises a back plate body and a plurality of side walls protruded on each of side edges of the back plate body. The front frame and the side walls of the back plate are fixed and connected by the fixing member, so as to fix and connect the front frame and back plate.
Abstract:
A light guide plate comprises a light incidence surface for receiving light rays; a transforming fluorescent powder disposed on the light incidence surface for converting the light rays into white rays; a reflection surface for reflecting the light rays and destroying total internal reflection formed inside the light guide plate to generate planar light rays; a light emitting surface for emitting the planar light rays; and a lateral reflection surface disposed away from the light incidence surface for reflecting the light rays from the light incidence surface and the reflection surface; the lateral reflection surface having a compensative fluorescent powder disposed thereon for adjusting a color of the planar light rays. The light guide plate can reduce the backlight color difference for a panel of a single-end incident type to improve visual quality level and the quality of products.
Abstract:
The present invention provides a liquid crystal display module package box, which includes a box body, a retention frame arranged in the box body, and a cushioning device arranged in the box body. The retention frame forms therein a plurality of receiving channels corresponding to liquid crystal display modules. The cushioning device includes a first cushioning unit arranged between the retention frame and the box body and a plurality of second cushioning units arranged between the liquid crystal display modules and between the liquid crystal display modules and the box body. The first cushioning unit is formed by connecting a plurality of first air columns. The second cushioning unit is formed by connecting a plurality of second air columns. The liquid crystal display module package box provides a fully covered protection to the liquid crystal display modules received in the box body.